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Optimization modeling for dynamic price based demand response in microgrids

机译:微电网中基于动态价格的需求响应的优化建模

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摘要

Eco-friendly technologies regarding electricity production are urgent need of sustainable energy development. The renewable energy resources (RERs) have brought green revolution in mitigation of greenhouse gaseous emission resulted from traditional energy resources (TERs). Moreover, the effective utilization of these resources is influenced by pricing schemes which have limitations. Therefore, this paper aims at optimization modeling for dynamic price-based demand response (DR) which includes flexible and inflexible loads along with the effective utilization of RERs i.e. photovoltaics (PVs) and wind turbines (WTs) in a microgrid (MG). The optimization problem regarding profit maximization for loads (flexible and inflexible) is solved via particle swarm optimization (PSO). Two cases are used to evaluate the performance of proposed dynamic pricing scheme. The simulation results have shown that proposed scheme is suitable in term of profit and comfort for flexible and inflexible loads as compared to fixed pricing scheme in both cases. In addition, the dynamic pricing scheme is exemplified as plug and play devices because of its easy implementation in present market structure without any modification. (C) 2019 Elsevier Ltd. All rights reserved.
机译:有关电力生产的环保技术是可持续能源发展的迫切需要。可再生能源(RER)在减轻传统能源(TER)产生的温室气体排放方面带来了绿色革命。此外,这些资源的有效利用受到定价机制的限制,定价机制会受到限制。因此,本文旨在针对基于动态价格的需求响应(DR)进行优化建模,该模型包括灵活和不灵活的负载以及RER的有效利用,即微电网(MG)中的光伏(PV)和风力涡轮机(WT)。通过粒子群优化(PSO)解决了有关负荷(柔性和非柔性)利润最大化的优化问题。有两种情况用于评估提议的动态定价方案的性能。仿真结果表明,与固定定价方案相比,该方案在收益和舒适性方面都适合于灵活和不灵活的负荷。另外,动态定价方案被示例为即插即用设备,因为其在当前市场结构中易于实施而无需任何修改。 (C)2019 Elsevier Ltd.保留所有权利。

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